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Two-part curing high-durable polyurethane elastomer composition

a polyurethane elastomer and composition technology, applied in the field of two-part curing high-durable polyurethane elastomer composition, can solve the problems of deterioration of casting workability, fine spaces cannot be filled with compositions, appearance and performance deterioration, etc., and achieve low viscosity, high hardness, and high durability.

Inactive Publication Date: 2007-04-12
NIHON GOSEI KAKO
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Benefits of technology

[0012] The two-part curing high-durable polyurethane elastomer composition of the invention has low viscosity after two-part mixing. Therefore, when the composition is executed with a trowel, a spatula, a roller or the like after two-part mixing, inclusion of bubbles does not involve, and even when casting in a mold, inclusion of bubbles does not involve. As a result, fine spaces can be filled with the composition. Further, a cured product of the composition has low hardness and large elongation at break. As a result, the cured product has excellent physical properties, and therefore has excellent heat resistance and wet heat resistance.

Problems solved by technology

Therefore, where the viscosity after two-part mixing is high, bubbles are liable to be included when executing with a trowel, a spatula, a roller or the like, resulting in deterioration of appearance and performance.
Further, where casting in a mold, inclusion of bubbles is large, and casting workability deteriorates such that fine spaces cannot be filled with a composition.
However, where a polyether polyol is used as the active hydrogen-containing compound, a cured product has relatively good wet heat resistance, but has poor heat resistance.
On the other hand, where a polyester polyol is used, heat resistance is relatively good, but wet heat resistance is poor.
However, when the hydride of a hydroxyl group-containing liquid polyisoprene proposed in those patent publications is used, a composition has high viscosity, and when executing with a trowel, a spatula, a roller or the like after two-part mixing, bubbles are liable to be included, resulting in deterioration of appearance and performance.
Further, in the case of casting in a mold, there are the disadvantages that inclusion of bubbles is large, and fine spaces cannot be filled with a composition.

Method used

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Examples

Experimental program
Comparison scheme
Effect test

synthesis example 1

[0055] 1,000 parts of a polyester polyol having a molecular weight of 1,000 obtained by condensing trimethylolpropane, ethylene glycol and adipic acid, 2,384 parts of 12-hydroxystearic acid, and 3 parts of paratoluenesulfonic acid were charged in a reaction vessel equipped with a stirrer, a thermometer, a condenser, a water separator and a nitrogen gas introduction pipe, and were reacted at a reaction temperature of from 160 to 200° C. for 8 hours under nitrogen gas stream. By-product water was distilled off outside the system through a distillation-off pipe. The reaction product was cooled, washed with water and dehydrated to obtain Polyol (A-1). Polyol (A-1) obtained had a hydroxyl value of 34 and a viscosity of 5,000 (mPa·s / 25° C.).

synthesis example 2

[0056] 500 parts of a polyester polyol having a molecular weight of 500 obtained by condensing trimethylolpropane, ethylene glycol and adipic acid, and 2,384 parts of 12-hydroxystearic acid were reacted in the same manner as in Synthesis Example 1. Polyol (A-2) obtained had a hydroxyl value of 40 and a viscosity of 3,700 (mPa·s / 25° C.).

synthesis example 3

[0057] 300 parts of a polyester polyol having a molecular weight of 300 obtained by condensing trimethylolpropane, ethylene glycol and adipic acid, and 2,384 parts of 12-hydroxystearic acid were reacted in the same manner as in Synthesis Example 1. Polyol (A-3) obtained had a hydroxyl value of 46 and a viscosity of 2,100 (mPa·s / 25° C.).

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PUM

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Abstract

A two-part curing high-durable polyurethane elastomer composition having excellent heat resistance and wet heat resistance, and excellent workability such that a viscosity after two-part mixing is suitable for casting workability which comprises (i) a polyisocyanate component, and (ii) an active hydrogen-containing compound comprising (A) a polyol having a hydroxyl value of from 25 to 55 obtained by reacting a castor oil fatty acid, 12-hydroxystearic acid, or a condensate of their fatty acids, with a polyol (X) having a molecular weight of from 400 to 1,500, and (B) a polyol having a hydroxyl value of from 100 to 500 obtained by ring opening an epoxidized fatty acid ester with a polyhydric alcohol.

Description

TECHNICAL FIELD [0001] The present invention relates to a two-part curing high-durable polyurethane elastomer composition. [0002] More particularly, the invention relates to a two-part curing high-durable polyurethane elastomer composition having excellent heat resistance and wet heat resistance, and low viscosity after two-part mixing, thereby having good casting workability. BACKGROUND ART [0003] A two-part curing polyurethane elastomer composition has excellent physical properties of a cured product, such as strength, elongation, elastic modulus and the like, and therefore is widely used in applications such as a water-proof material, a floor material, a pavement material, an adhesive, a sealing material and the like. The two-part curing polyurethane elastomer composition is cured by stirring and mixing a curing agent comprising an active hydrogen-containing compound as a main component and a base resin comprising a polyisocyanate component as a main component, and executing with...

Claims

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Application Information

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Patent Type & Authority Applications(United States)
IPC IPC(8): C08G18/00C08G18/66
CPCC08G18/66
Inventor FUKUDA, KEISUKENAGAHISA, SEIJIYAMAGUCHI, HIROSHI
Owner NIHON GOSEI KAKO
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